Relucenti Michela, Francescangeli Federica, De Angelis Maria Laura, D'Andrea Vito, Miglietta Selenia, Pilozzi Emanuela, Li Xiaobo, Boe Alessandra, Chen Rui, Zeuner Ann, Familiari Giuseppe
Department of Anatomy, Section of Human Anatomy, Sapienza University of Rome, 00161 Rome, Italy.
Department of Oncology and Molecular Medicine, Istituto Superiore di Sanità, 00161 Rome, Italy.
Biology (Basel). 2021 Sep 17;10(9):929. doi: 10.3390/biology10090929.
Spheroids from primary colorectal cancer cells and their mice xenografts have emerged as useful preclinical models for cancer research as they replicate tumor features more faithfully as compared to cell lines. While 3D models provide a reliable system for drug discovery and testing, their structural complexity represents a challenge and their structure-function relationships are only partly understood. Here, we present a comparative ultrastructural and flow citometric analysis of patient colorectal cancer-derived spheroids and their mice xenografts. Ultrastructural observations highlighted that multicellular spheroids and their xenografts contain the same cancer cell types but with different ratios, specifically multicellular spheroids were enriched in cells with a stem-like phenotype, while xenografts had an increased amount of lipid droplets-containing cells. The flow cytometric analysis for stem cell marker and activity showed enrichment of stem-like cells presence and activity in spheroids while xenografts had the inverse response. Our results evidence the effects on cancer cells of different in vitro and in vivo microenvironments. Those differences have to be paid into account in designing innovative experimental models for personalized drug testing.
来自原发性结肠直肠癌细胞及其小鼠异种移植瘤的球体已成为癌症研究中有用的临床前模型,因为与细胞系相比,它们能更忠实地复制肿瘤特征。虽然三维模型为药物发现和测试提供了一个可靠的系统,但其结构复杂性是一个挑战,并且其结构 - 功能关系仅得到部分理解。在此,我们对源自患者结肠直肠癌的球体及其小鼠异种移植瘤进行了超微结构和流式细胞术的比较分析。超微结构观察突出显示,多细胞球体及其异种移植瘤包含相同的癌细胞类型,但比例不同,具体而言,多细胞球体中富含具有干细胞样表型的细胞,而异种移植瘤中含脂滴细胞的数量增加。对干细胞标志物和活性的流式细胞术分析表明,球体中存在并富集干细胞样细胞及其活性,而异种移植瘤则呈现相反的反应。我们的结果证明了不同体外和体内微环境对癌细胞的影响。在设计用于个性化药物测试的创新实验模型时,必须考虑这些差异。